Visualization of cell cycle in mouse embryos with Fucci2 reporter directed by Rosa26 promoter

Author:

Abe Takaya1,Sakaue-Sawano Asako23,Kiyonari Hiroshi1,Shioi Go1,Inoue Ken-ichi1,Horiuchi Toshitaka4,Nakao Kazuki15,Miyawaki Atsushi23,Aizawa Shinichi1,Fujimori Toshihiko16

Affiliation:

1. Laboratory for Animal Resources and Genetic Engineering, RIKEN Center for Developmental Biology (CDB), Kobe 650-0047, Japan.

2. Life Function And Dynamics, Erato, Jst, 2-1 Hirosawa, Wako-City, Saitama 351-0198, Japan.

3. Laboratory for Cell Function and Dynamics, Advanced Technology Development Group, Brain Science Institute, RIKEN, 2-1 Hirosawa, Wako-city, Saitama 351-0198, Japan.

4. Faculty of Life and Environmental Sciences, Department of Life Sciences Prefectural University of Hiroshima, Shobara 727-0023, Japan.

5. Laboratory of Animal Resources, Center for Disease Biology and Integrative Medicine Faculty of Medicine (CDBIM), University of Tokyo, Tokyo 113-0033, Japan.

6. Division of Embryology, National Institute for Basic Biology (NIBB), Okazaki 444-8787, Japan.

Abstract

Fucci technology makes possible the distinction between live cells in the G1 and S/G2/M phases by dual-color imaging. This technology relies upon ubiquitylation-mediated proteolysis, and transgenic mice expressing Fucci provide a powerful model system with which to study the coordination of the cell cycle and development. The mice were initially generated using the CAG promoter; lines expressing the G1 and S/G2/M phase probes that emitted orange (mKO2) and green (mAG) fluorescence, respectively, were separately constructed. Owing to cell type-biased strength of the CAG promoter as well as the positional effects of random transgenesis, however, we noticed some variability in Fucci expression levels. To control more reliably the expression of cell cycle probes, we used different genetic approaches to create two types of reporter mouse lines with Fucci2 and Rosa26 transcriptional machinery. Fucci2 is a recently developed Fucci derivative, which emits red (mCherry) and green (mVenus) fluorescence and provides better color contrast than Fucci. A new transgenic line, R26p-Fucci2, utilizes the Rosa26 promoter and harbors the G1 and S/G2/M phase probes in a single transgene to preserve their co-inheritance. In the other R26R-Fucci2 approach, the two probes are incorporated into Rosa26 locus conditionally. The Cre-mediated loxP recombination technique thus allows researchers to design cell-type-specific Fucci2 expression. By performing time-lapse imaging experiments using R26p-Fucci2 and R26-Fucci2 in which R26R-Fucci2 had undergone germline loxP recombination, we demonstrated the great promise of these mouse reporters for studying cell cycle behavior in vivo.

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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